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Thermodynamic performance of Kalina cycle system 11 (KCS11): feasibility of using alternative zeotropic mixtures

机译:Kalina循环系统11(KCS11)的热力学性能:使用其他共沸混合物的可行性

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With the ever increasing demand for energy, exploiting low-temperature heat sources has seen significant interest recently. The conventional organic Rankine cycle (ORC) is a typical approach used to exploit low-temperature heat sources but suffers from low efficiency. The Kalina cycle is a reversed absorption cooling system that normally utilizes an ammonia–water binary mixture as the working fluid. This paper investigates, using thermodynamic modelling, the performance of Kalina cycle system 11 (KCS11) used for low-temperature heat sources below 200°C compared with the ORC based on pure ammonia and R134a. The cycle performance was investigated at various operating conditions including the evaporator pressure of 10–50 bars, heat source temperature of 333–473 K, heat sink temperature of 283 K and in the case of KCS11 various ammonia mass fractions at the evaporator outlet. Results show that the KCS11 can produce up to 40% increase in the efficiency compared with the ORC when using ammonia and up to 20% increase when using R134a. Although the ammonia–water working pair has zero ozone depletion potential (ODP) and very low global warming potential (GWP), it is toxic and needs special safety procedures against leak as ammonia is part of this binary mixture. Therefore, further investigation was carried out to explore the feasibility of using alternative working pairs that are non-toxic and outperform the ammonia–water pair for the Kalina cycle. Nineteen working pairs were investigated and results showed that propane and propylene-based mixtures have the potential to replace the ammonia–water pair in the KCS11.
机译:随着能源需求的不断增长,近来开发低温热源引起了人们的极大兴趣。常规的有机朗肯循环(ORC)是用于开发低温热源的典型方法,但效率低下。 Kalina循环是一种反向吸收式冷却系统,通常利用氨水二元混合物作为工作流体。本文使用热力学模型研究了与基于纯氨和R134a的ORC相比,用于200°C以下低温热源的Kalina循环系统11(KCS11)的性能。在各种运行条件下研究了循环性能,包括10–50 bar的蒸发器压力,333–473 K的热源温度,283 K的散热器温度,以及在KCS11的情况下,蒸发器出口处的氨质量分数各不相同。结果表明,与使用氨水的ORC相比,KCS11的效率提高40%,而使用R134a的效率提高20%。尽管氨水工作对具有零臭氧消耗潜能(ODP)和非常低的全球变暖潜能(GWP),但它有毒且需要特殊的安全程序以防泄漏,因为氨是这种二元混合物的一部分。因此,进行了进一步的研究,以探索在Kalina循环中使用无毒且优于氨水对的替代工作对的可行性。对19个工作对进行了调查,结果表明,丙烷和丙烯基混合物可以替代KCS11中的氨水对。

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